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[振动对兔骨骼肌线粒体融合与分裂基因表达及超微结构的影响]

[Effects of vibration on the expression of mitochondrial fusion and fission genes and ultrastructure of skeletal muscle in rabbits].

作者信息

Li J X, Xie S Y, Zhang Z Q, Zhang C Z, Lin L

机构信息

Key Laboratory of Occupational Health and Environmental Medicine, Jining Medical University, Jining 272013, China School of Public Health, Weifang Medical University, Weifang 261053, China.

Key Laboratory of Occupational Health and Environmental Medicine, Jining Medical University, Jining 272013, China.

出版信息

Zhonghua Lao Dong Wei Sheng Zhi Ye Bing Za Zhi. 2022 Jan 20;40(1):18-23. doi: 10.3760/cma.j.cn121094-20201103-00608.

Abstract

To study the effects of vibration on the expression of mitochondrial fusion and fission genes and ultrastructure of skeletal muscle in rabbits. Thirty-two 3.5-month-old New Zealand rabbits were randomly divided into low-intensity group, medium-intensity group, high-intensity group and control group, with 8 rabbits in each group. The rabbits in the experimental group were subjected to hind limb vibration load test for 45 days. The vibration intensity of the high intensity group was 12.26 m/s(2), the medium intensity group was 6.13 m/s(2), and the low intensity group was 3.02 m/s(2) according to the effective value of weighted acceleration[a(hw (4))] for 4 hours of equal energy frequency. The control group was exposed to noise only in the same experimental environment as the medium-intensity group. The noise levels of each group were measured during the vibration load experiment. After the test, the mRNA expression of mitochondrial fusion gene () and fission gene (, ) by RT-PCR in the skeletal muscles were measured and the ultrastructure of the skeletal muscles were observed in high intensity group. The mRNA expression of mitochondrial in the skeletal muscle tissues of control group, low intensity group, medium intensity group and high intensity group were : 3.25±1.36, 3.85±1.90, 4.53±2.31 and 11.63±7.68; : 0.68±0.25, 1.02±0.40, 0.94±0.33 and 1.40±0.45; : 1.05±0.62, 1.15±0.59, 1.53±1.06 and 2.46±1.51 and : 3.72±1.76, 2.91±1.63, 3.27±2.01 and 4.21±2.46, respectively. Compared with the control group, the expressions of mRNA, mRNA and mRNA in the high-intensity group increased significantly (<0.05) , and the expressions of mRNA in the medium-intensity group and the low-intensity group increased significantly (<0.05) . Compared with the control group, the ultrastructure of skeletal muscle of high intensity group showed mitochondrial focal accumulation, cristae membrane damage, vacuole-like changes; Z-line irregularity of muscle fibers, and deficiency of sarcomere. Vibration must be lead to the abnormal mitochondrial morphology and structure and the disorder of energy metabolism due to the expression imbalance of mitochondrial fusion and fission genes in skeletal muscles of rabbits, which may be an important target of vibration-induced skeletal muscle injury.

摘要

研究振动对兔骨骼肌线粒体融合与分裂基因表达及超微结构的影响。将32只3.5月龄新西兰兔随机分为低强度组、中强度组、高强度组和对照组,每组8只。对实验组家兔进行后肢振动负荷试验45天。根据等能量频率4小时加权加速度[a(hw(4))]有效值,高强度组振动强度为12.26m/s(2),中强度组为6.13m/s(2),低强度组为3.02m/s(2)。对照组仅在与中强度组相同的实验环境中暴露于噪声。在振动负荷实验期间测量每组的噪声水平。试验结束后,采用RT-PCR法检测骨骼肌中线粒体融合基因()和分裂基因(,)的mRNA表达,并观察高强度组骨骼肌的超微结构。对照组、低强度组、中强度组和高强度组骨骼肌组织中mRNA的表达分别为:3.25±1.36、3.85±1.90、4.53±2.31和11.63±7.68;:0.68±0.25、1.02±0.40、0.94±0.33和1.40±0.45;:1.05±0.62、1.15±0.59、1.53±1.06和2.46±1.51;:3.72±1.76、2.91±1.63、3.27±2.01和4.21±2.46。与对照组相比,高强度组mRNA、mRNA和mRNA的表达显著增加(<0.05),中强度组和低强度组mRNA的表达显著增加(<0.05)。与对照组相比,高强度组骨骼肌超微结构表现为线粒体局灶性聚集、嵴膜损伤、空泡样改变;肌纤维Z线不规则,肌节缺失。振动必然导致兔骨骼肌线粒体形态结构异常及能量代谢紊乱,这可能是振动致骨骼肌损伤的重要靶点。

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